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Exposure modelling of productivity-permitted general freight trucking on uncongested highways.

机译:在拥挤的高速公路上允许生产力的普通货运卡车的暴露模型。

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摘要

The research designs, develops, validates, and applies an exposure model of productivity-permitted general freight trucking on uncongested highways. Productivity-permitted general freight trucks (long trucks) are multiple trailer configurations, consisting of van trailers, which exceed basic vehicle length limits but operate within basic weight restrictions. The three predominant long trucks in North America are Rocky Mountain doubles (Rockies), Turnpike doubles (Turnpikes), and triple trailer combinations (triples). Long trucks have been used in Canada since the late 1960s. Recent highway investments in the Canadian Prairie Region have effectively completed the network on which long trucks are allowed to operate. Despite widespread use of long trucks for many years and these recent infrastructure investments, there is a knowledge deficiency about long truck exposure.The exposure model relies on a unique dataset that integrates output from a classification algorithm, field observations, and industry intelligence. The results indicate that long trucks travelled 67 million kilometres on a 10,000 centreline-kilometre highway network in the Canadian Prairie Region in 2006. The model demonstrates strong temporal and geographic concentration of long truck travel on the network. Application of the results reveals the following findings: (1) Decisions about establishing long truck permit charges are supported by consideration of options within a revenue adequacy rationale that are sensitive to freight density and the distance travelled by long trucks. (2) The exposure-based collision rate for Turnpikes is half of the collision rate for Rockies, about one-third of the rate for legal-length articulated trucks, and one-quarter of the rate for triples. (3) The model provides loading indicators required for pavement and bridge design and evaluation procedures and demonstrates the cubic orientation of long truck operations.The research uses the transportation systems analysis approach to design, develop, and validate the long truck exposure model. Exposure is expressed as an explanatory variable in three principal dimensions (volume, weight, and cube), which is needed for predicting transportation system impacts of long truck operations. The research applies the model to clarify issues that should be considered in establishing charges for long truck permits, determining long truck safety performance, and developing load spectra for long trucks.
机译:该研究设计,开发,验证并应用了在拥挤的高速公路上允许生产力的普通货运卡车的暴露模型。允许生产的普通货运卡车(长卡车)是多辆拖车配置,由厢式拖车组成,超过基本车辆长度限制,但在基本重量限制内运行。在北美,三辆主要的长卡车是洛矶山脉双打(Rockies),收费公路双打(Turnpikes)和三联拖车组合(三联)。自1960年代后期以来,加拿大一直使用长卡车。加拿大大草原地区最近的高速公路投资已经有效地完成了允许使用长卡车的网络。尽管长卡车的广泛使用已经很多年了,并且最近在基础设施方面进行了这些投资,但长卡车暴露在知识上仍然存在缺陷。暴露模型依赖于一个独特的数据集,该数据集将分类算法,现场观察和行业情报的输出进行了整合。结果表明,2006年加拿大大草原地区的10,000条中心线-公里公路网络上,长途卡车行驶了6,700万公里。该模型显示了长途卡车在网络上的强烈时空和地理集中性。结果的应用揭示了以下发现:(1)关于确定长卡车许可费用的决定,是通过考虑对收入密度和长卡车行进距离敏感的收入充足性范围内的选择来支持的。 (2)Turnpikes的基于碰撞的碰撞率是Rockies的碰撞率的一半,是合法长度的铰接式卡车的碰撞率的三分之一,三倍的碰撞率的四分之一。 (3)该模型提供了人行道,桥梁设计和评估程序所需的载荷指标,并证明了长卡车操作的立方体方向。本研究使用运输系统分析方法来设计,开发和验证长卡车暴露模型。暴露以三个主要维度(体积,重量和立方体)的解释性变量表示,这是预测长卡车操作对运输系统的影响所必需的。该研究应用该模型来阐明在确定长卡车许可费用,确定长卡车安全性能以及开发长卡车载荷谱时应考虑的问题。

著录项

  • 作者

    Regehr, Jonathan David.;

  • 作者单位

    University of Manitoba (Canada).;

  • 授予单位 University of Manitoba (Canada).;
  • 学科 Engineering Civil.Transportation.
  • 学位 Ph.D.
  • 年度 2009
  • 页码 188 p.
  • 总页数 188
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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